Hydrogel-based fiber biofabrication techniques for skeletal muscle tissue engineering
The functional capabilities of skeletal muscle are strongly correlated with its well-arranged
microstructure, consisting of parallelly aligned myotubes. In case of extensive muscle loss …
microstructure, consisting of parallelly aligned myotubes. In case of extensive muscle loss …
Bioinks and bioprinting strategies for skeletal muscle tissue engineering
Skeletal muscles play important roles in critical body functions and their injury or disease
can lead to limitation of mobility and loss of independence. Current treatments result in …
can lead to limitation of mobility and loss of independence. Current treatments result in …
Tissue extracellular matrix hydrogels as alternatives to Matrigel for culturing gastrointestinal organoids
Matrigel, a mouse tumor extracellular matrix protein mixture, is an indispensable component
of most organoid tissue culture. However, it has limited the utility of organoids for drug …
of most organoid tissue culture. However, it has limited the utility of organoids for drug …
Injectable remote magnetic nanofiber/hydrogel multiscale scaffold for functional anisotropic skeletal muscle regeneration
Develo** an injectable anisotropic scaffold with precisely topographic cues to induce 3D
cellular organization plays a critical role in volumetric muscle loss (VML) repair in vivo …
cellular organization plays a critical role in volumetric muscle loss (VML) repair in vivo …
Vertical extrusion cryo (bio) printing for anisotropic tissue manufacturing
Due to the poor mechanical properties of many hydrogel bioinks, conventional 3D extrusion
bioprinting is usually conducted based on the X–Y plane, where the deposited layers are …
bioprinting is usually conducted based on the X–Y plane, where the deposited layers are …
[HTML][HTML] Functional acellular matrix for tissue repair
B Wang, T Qinglai, Q Yang, M Li, S Zeng, X Yang… - Materials Today Bio, 2023 - Elsevier
In view of their low immunogenicity, biomimetic internal environment, tissue-and organ-like
physicochemical properties, and functionalization potential, decellularized extracellular …
physicochemical properties, and functionalization potential, decellularized extracellular …
3D bioprinting using a new photo-crosslinking method for muscle tissue restoration
Abstract Three-dimensional (3D) bioprinting is a highly effective technique for fabricating cell-
loaded constructs in tissue engineering. However, the versatility of fabricating precise and …
loaded constructs in tissue engineering. However, the versatility of fabricating precise and …
Ligand coupling and decoupling modulates stem cell fate
In natural microenvironment, various proteins containing adhesive ligands in fibrous and
non‐fibrous structures dynamically couple and decouple to regulate stem cell fate. Herein …
non‐fibrous structures dynamically couple and decouple to regulate stem cell fate. Herein …
Hernia Mesh with Biomechanical and Mesh–Tissue Interface Dual Compliance for Scarless Abdominal Wall Reconstruction
Y Jiao, C Li, S Li, X Liu, S Yu, X Liu, Y Li… - Advanced Functional …, 2023 - Wiley Online Library
A fabric hydrogel composite hernia mesh with biomechanical and mesh–tissue interface
dual compliance is designed for scarless abdominal wall reconstruction. The mesh is …
dual compliance is designed for scarless abdominal wall reconstruction. The mesh is …
Versatile human cardiac tissues engineered with perfusable heart extracellular microenvironment for biomedical applications
Engineered human cardiac tissues have been utilized for various biomedical applications,
including drug testing, disease modeling, and regenerative medicine. However, the …
including drug testing, disease modeling, and regenerative medicine. However, the …